Girish P. Saraph April 25, 2005 ELITEX 2005 Dr. Girish P. Saraph Associate Professor Department of Electrical Engineering Indian Institute of Technology.

Slides:



Advertisements
Similar presentations
MPLS: The Magic Behind the Myths Grenville Armitage (author) Scott Crosby (presenter)
Advertisements

Identifying MPLS Applications
Deployment of MPLS VPN in Large ISP Networks
© 2006 Cisco Systems, Inc. All rights reserved. MPLS v2.2—8-1 MPLS TE Overview Introducing the TE Concept.
Packet Switching COM1337/3501 Textbook: Computer Networks: A Systems Approach, L. Peterson, B. Davie, Morgan Kaufmann Chapter 3.
1 Traffic Engineering (TE). 2 Network Congestion Causes of congestion –Lack of network resources –Uneven distribution of traffic caused by current dynamic.
1 EL736 Communications Networks II: Design and Algorithms Class3: Network Design Modeling Yong Liu 09/19/2007.
A Flexible Model for Resource Management in Virtual Private Networks Presenter: Huang, Rigao Kang, Yuefang.
An evolutionary approach to G-MPLS ensuring a smooth migration of legacy networks Ben Martens Alcatel USA.
Quality of Service Issues in Multi-Service Wireless Internet Links George Xylomenos and George C. Polyzos Department of Informatics Athens University of.
CPSC Topics in Multimedia Networking A Mechanism for Equitable Bandwidth Allocation under QoS and Budget Constraints D. Sivakumar IBM Almaden Research.
Breaking the Single-Path Barrier Brad Smith Jack Baskin SoE Research Review Day 10/20/2011.
April 1999Networking Trends/Habib Youssef 1 Networking Trends Habib Youssef, Ph.D. Department of Computer Engineering King Fahd.
Ashish Gupta Under Guidance of Prof. B.N. Jain Department of Computer Science and Engineering Advanced Networking Laboratory.
Presented by: Dmitri Perelman Nadav Chachmon. Agenda Overview MPLS evolution to GMPLS Switching issues –GMPLS label and its distribution –LSP creation.
Metropolitan Ethernet Networks Estella Kang Matt Powers SC441 Computer Networks – Independent Study Boston University.
Multiple constraints QoS Routing Given: - a (real time) connection request with specified QoS requirements (e.g., Bdw, Delay, Jitter, packet loss, path.
1IMIC, 8/30/99 Constraint-Based Unicast and Multicast: Practical Issues Bala Rajagopalan NEC C&C Research Labs Princeton, NJ
ATM service types CBR (Constant Bit Rate)
In-Band Flow Establishment for End-to-End QoS in RDRN Saravanan Radhakrishnan.
Traffic Engineering and Routing Hansen Bow. Topics Traffic Engineering with MPLS Issues Concerning Voice over IP Features of Netscope QoS Routing for.
Transmission Control Protocol (TCP) and Packet-Switching Hardware Devang Parekh EE290F 4/15/04.
Path Protection in MPLS Networks Using Segment Based Approach.
A General approach to MPLS Path Protection using Segments Ashish Gupta Ashish Gupta.
EE 4272Spring, 2003 Chapter 11. ATM and Frame Relay Overview of ATM Protocol Architecture ATM Logical Connections ATM Cells ATM Service Categories ATM.
A Flexible Model for Resource Management in Virtual Private Networks Sanket Naik CS590F Fall 2000.
1 Networking Basics: A Review Carey Williamson iCORE Professor Department of Computer Science University of Calgary.
A Study of MPLS Department of Computing Science & Engineering DE MONTFORT UNIVERSITY, LEICESTER, U.K. By PARMINDER SINGH KANG
1 © 2004 Cisco Systems, Inc. All rights reserved. Session Number Presentation_ID Cisco IP Solution Center 4.0 TRAFFIC ENGINEERING MANAGEMENT Executive.
Network Topology. Cisco 2921 Integrated Services Router Security Embedded hardware-accelerated VPN encryption Secure collaborative communications with.
1 © 2005 Cisco Systems, Inc. All rights reserved. Cisco Public IP Telephony Introduction to VoIP Cisco Networking Academy Program.
Implement a QoS Algorithm for Real-Time Applications in the DiffServ-aware MPLS Network Zuo-Po Huang, *Ji-Feng Chiu, Wen-Shyang Hwang and *Ce-Kuen Shieh.
1 Multi-Protocol Label Switching (MPLS) presented by: chitralekha tamrakar (B.S.E.) divya krit tamrakar (B.S.E.) Rashmi shrivastava(B.S.E.) prakriti.
MPLS networking at PSP Co Multi-Protocol Label Switching Presented by: Hamid Sheikhghanbari 1.
May 2001GRNET GRNET2 Designing The Optical Internet of Greece: A case study Magda Chatzaki Dimitrios K. Kalogeras Nassos Papakostas Stelios Sartzetakis.
United Telecommunication Services Michael Gaari Manager Network Provisioning UTS
QoS in MPLS SMU CSE 8344.
1 Multi Protocol Label Switching Presented by: Petros Ioannou Dept. of Electrical and Computer Engineering, UCY.
IP/MPLS Multiprotocol Label Switching
Technical Seminar Presented by :- Sangram Sekhar Choudhuri(CS ) 1 A SEMINAR REPORT ON ASYNCHRONOUS TRANSFER MODE(ATM) Under the Guidance of Mr.
MPLS and Traffic Engineering Ji-Hoon Yun Computer Communications and Switching Systems Lab.
1 High-Level Carrier Requirements for Cross Layer Optimization Dave McDysan Verizon.
1 Which Standards are needed toward Future Wireline and Wireless IP Network ? Hee Chang Chung, Jun Kyun Choi
1 UHG MPLS Experience June 14, 2005 Sorell Slaymaker Director Network Architecture & Technologies
1 Quality of Service Outline Realtime Applications Integrated Services Differentiated Services MPLS.
Voice Over Internet Protocol (VoIP). Basic Components of a Telephony Network.
Department of Energy Office of Science ESCC & Internet2 Joint Techs Workshop Madison, Wisconsin.July 16-20, 2006 Network Virtualization & Hybridization.
Telecommunications Essentials Chapter 7 Wide Area Networking.
Graceful Label Numbering in Optical MPLS Networks Ibrahim C. Arkut Refik C. Arkut Nasir Ghani
A Practical Approach for Providing QoS: MPLS and DiffServ
1 Dynamic Service Provisioning in Converged Network Infrastructure Muckai Girish Atoga Systems.
Converged Media Networks
1 Wide Area Network Emulation on the Millennium Bhaskaran Raman Yan Chen Weidong Cui Randy Katz {bhaskar, yanchen, wdc, Millennium.
Multiple Protocol Support: Multiprotocol Level Switching.
1 Switching and Forwarding Sections Connecting More Than Two Hosts Multi-access link: Ethernet, wireless –Single physical link, shared by multiple.
1 Traffic Engineering By Kavitha Ganapa. 2 Introduction Traffic engineering is concerned with the issue of performance evaluation and optimization of.
Internet Traffic Engineering Motivation: –The Fish problem, congested links. –Two properties of IP routing Destination based Local optimization TE: optimizing.
MULTI-PROTOCOL LABEL SWITCHING By: By: YASHWANT.V YASHWANT.V ROLL NO:20 ROLL NO:20.
Multi-protocol Label Switching
Bearer Control for VoIP and VoMPLS Control Plane Francois Le Faucheur Bruce Thompson Cisco Systems, Inc. Angela Chiu AT&T March 30, 2000.
© 2001 Caspian Networks, Inc. CONFIDENTIAL AND PROPRIETARY INFORMATION Internet Intelligence and Traffic Growth Lawrence G. Roberts Chairman & CTO Caspian.
Multimedia Communication Systems Techniques, Standards, and Networks Chapter 4 Distributed Multimedia Systems.
MPLS Introduction How MPLS Works ?? MPLS - The Motivation MPLS Application MPLS Advantages Conclusion.
Multiprotocol Label Switching (MPLS) Routing algorithms provide support for performance goals – Distributed and dynamic React to congestion Load balance.
OverQos: An Overlay based Architecture for Enhancing Internet Qos L Subramanian*, I Stoica*, H Balakrishnan +, R Katz* *UC Berkeley, MIT + USENIX NSDI’04,
P2MP LSP for IPTV 이동 무선 네트워크 연구실 홍 석 준
An evolutionary approach to G-MPLS ensuring a smooth migration of legacy networks Ben Martens Alcatel USA.
Packet Switching Networks & Frame Relay
Label Switched VPNs – Scalability and Performance Analysis
Presentation transcript:

Girish P. Saraph April 25, 2005 ELITEX 2005 Dr. Girish P. Saraph Associate Professor Department of Electrical Engineering Indian Institute of Technology Bombay Powai, Mumbai Converged Communication Networks

Girish P. Saraph April 25, 2005 ELITEX 2005 Outline Convergence in core networks New broadband applications and requirements Rationale for MPLS traffic engineering New VS routing for MPLS path selection Technical merits of Virtual Space routing MPLS traffic engineering implementation Conclusions

Girish P. Saraph April 25, 2005 ELITEX 2005 Traditional Technologies in Core Networks ATM or Frame Relay network: Optimized for voice transport Advantages: connection oriented, reliable, supports QoS Disadvantages: limited scalability and flexibility, high overhead IP network: Optimized for data (packet) transport Advantages: excellent scalability and flexibility, efficient, common application platform, supports several data services Disadvantages: connectionless, best-effort, no performance guarantees Both networks are supported over TDM or SONET/SDH platform SONET/SDH network: Statically provisioned, reliable (SLA support)

Girish P. Saraph April 25, 2005 ELITEX 2005 MPLS for Convergence in Core Networks Very costly to keep separate voice, video, and data networks Bridging the gap between IP (data) and ATM (voice) networks  MPLS network to support voice, video, and data services Individual label-switched paths with QoS guarantees for aggregate flows – Explicit routed LSPs with specific resource reservation Evolutionary path to IP and ATM infrastructure  Reduced CAPEX Single operation and management plane  Reduced OPEX Additional services over existing networks  Increased ROI – Enable layer 2 and layer 3 virtual private networks (VPNs)

Girish P. Saraph April 25, 2005 ELITEX 2005 Emerging Broadband Applications Web-hosting and Data-warehousing services Internet gaming and streaming video services Video-on-demand and Bandwidth-on-demand services Bundled VoIP, Video telephony, and Wireless access services Video conferencing services (MPLS VPN Multicast) for global enterprises Banking, ERP, and CRM applications of global enterprises Bundled services for digital home network access, including broadband Internet, voice & video telephony, digital TV or HDTV  Different requirements for real-time performance, reliability, security, etc.

Girish P. Saraph April 25, 2005 ELITEX 2005 Broadband Applications Statistical Multiplexing ~ 6250 audio (G.729) channels with ~ 9.6 kbps rate on OC-3 (155Mbps) Link ~ 33 MPEG video channels with ~ 1.82 Mbps rate Analytical Model Broadband applications  Reduced smoothening  Bursty, unpredictable aggregate traffic

Girish P. Saraph April 25, 2005 ELITEX 2005 Rationale for MPLS Traffic Engineering Broadband applications  bursty, unpredictable aggregate traffic  high peak-to-average ratios in link loading Common approach – Static over-provisioning with load-balancing e.g. 2 links carrying < 40% average traffic – Not an acceptable QoS solution under a link failure Achieve high network utilization with overlapping path protection Support QoS from the user perspective using application based aggregation (FEC) and traffic engineering Intelligent path selection based on specific QoS requirements, network resources, and performance parameters

Girish P. Saraph April 25, 2005 ELITEX 2005 Multi-parameter Optimization Traffic engineering objectives require multi-parameter optimization based on: Network performance parameters: Total network throughput (total connections x data rates) Number of hops in each path (leads to network loading) Link loading distribution (congestion and under-utilization of links) Blocking probability for arbitrary connection-requests Stability and scalability of implementation Flow or connection based QoS parameters: Available bandwidthPriority level (or CoS) Total path delayDelay jitter Packet drop ratePath attributes Path protectionReliability

Girish P. Saraph April 25, 2005 ELITEX 2005 New Approach: VS Routing Minimize routing information – concise representation – elimination of redundant info.  better scalability, fast adaptability, and simple implementation Transform network topology information (VS embedding) into multi-dimensional network map (VS configuration) capable of geometric routing (directivity property) Combine directivity and dynamic link info. for path selection (VS routing) Use VS routing for multiple path selection & multi-parameter optimization

Girish P. Saraph April 25, 2005 ELITEX 2005 Virtual Space Routing Differentiate between static and dynamic information Static → Network topology, Dynamic → Link status & loading Static (topology) information is embedded into VS configuration VS configuration enables simple geometric routing Directed distance to destination gives available path choices VS Embedding: Evolution of multi-dimensional VS configuration Energy minimization process in equivalent multi-body system Dynamic link/node costs: Reflects link/node status & loading Link or node failure represents extreme link or node cost Link / node costs are only distributed locally in VS space

Girish P. Saraph April 25, 2005 ELITEX 2005 Technical Merits => VS routing scheme is highly scalable, dynamic, robust, and simple. Traditional scheme VS scheme Routing information scaling: N 2 – N 3 log(N) Information database: Thousands of strings < 100 numbers Peak link loading: – ~ 25% less Link state update time: Slow Fast Multiple QoS parameter support: Partial Full Resource requirements: High Low Failure recovery & convergence: Slow Fast

Girish P. Saraph April 25, 2005 ELITEX 2005 MPLS Traffic Engineering Tool Implementation MPLS-TE Database VS Routing based Path Selection User Interface or Automated Network Management Explicit Route Object Module RSVP Daemon Admin / Policy Control Module Network Diagnostics Network Packet Classifier Using Virtual Space (VS) routing for MPLS-TE optimization

Girish P. Saraph April 25, 2005 ELITEX 2005 MPLS Traffic Engineering & Network Management QOS support for VVD convergence in the core Capability to handle hundreds of MPLS tunnels Path selection based on multiple QoS parameters: (i) hops (ii) delay (iii) bandwidth (iv) congestion (v) link status Efficient overlapping back-up paths for MPLS Fast Reroute Optimal point-to-multipoint LSP tree selection for MPLS multicast Identification of critical links and analysis of “what-if” scenarios Enhanced network resource utilization and performance Improved network management and planning

Girish P. Saraph April 25, 2005 ELITEX 2005 Conclusions Convergence of VVD services in the core is achieved using MPLS network MPLS traffic engineering enables QoS support and network optimization MPLS-TE tool is being developed based on new VS routing scheme Tool supports optimization of multiple QoS parameters, protection, and multicast Acknowledgement: D.I.T. has funded a project at IIT Bombay to carry out performance analysis of new VS routing on the Network Simulator platform. The DIT coordinator is Shri. B.M. Baveja. Ref.: [1] High Performance Switching & Routing (HPSR) 2003, Torino, Italy [2] International Conf. on Communications (ICC) 2004, Paris, France [3] MPLS World Congress 2005, Paris, France